Base Clock Overclocking the Core i3-6100TE: The i5 Competition

Now we have the data, I want to pull up the data for the overclocked Core i3-6100TE and pit it against the data we already have in our database for the most likely contenders. Sitting at $117 at the base cost, and ignoring for the fact that it is almost impossible to buy because it’s a TE model, we’ll look purely at the overclocking compared to an equivalent i5 to see where having four physical cores (and more L3 cache per core) will beat the dual core with hyperthreading. We've also added in the Pentium G3258 results, overclocked to 4.7 GHz, to see where that sits. The i5 in this is the Core i5-6500 processor, which sits at a 3.3-3.9 GHz frequency. We've tested it but not yet written up the review, but the results are included.

CPU Short Form

HandBrake v0.9.9 LQ Film

Handbrake with a low quality file relies mainly on pure frequency and floating point performance, hence why the overclocked Pentium at 4.7 GHz beats the i3-6100TE at 3.65 GHz.

HandBrake v0.9.9 2x4K

When we move up to large frame conversion, the benchmark is more in line with the number of threads available as well as frequency, so the i5 takes more of a lead at the top and the Pentium comes down. The overclocked Core i3 holds station at mid-field, and in our benchmark database it sits at the top of the i3 parts, but significantly behind the Core i5s.

Dolphin Emulation Benchmark

Dolphin likes single core performance and high IPC, but also gets a boost from Haswell and beyond in terms of CPU architecture. This is why the G3258 when overclocked can beat almost everything else at stock.

Agisoft PhotoScan Benchmark - Total Time

Photoscan is a mixed back of threading, where at some points high frequency wins the day but at others it's a combination with cores and threads. Here, the lack of true cores (and in turn, L3 cache per thread), is the issue.

WinRAR 5.01, 2867 files, 1.52 GB

While WinRAR is a variable threaded load, it sits more comfortably with more cache, faster memory and more threads. There is still a big gap between the Core i3 parts and the Core i5 parts, even when the Core i3 is overclocked.

Cinebench R15 - Single Threaded

Cinebench in single threaded mode is all about frequency and IPC, hence the i3-6100TE OC can beat the older i5 parts. The Pentium G3258 at 4.7 GHz storms ahead here as a result.

Cinebench R15 - Multi-Threaded

However, the lack of true cores brings it down to earth in the multithreaded test. The difference between the overclocked i3-6100TE and the Core i5-6600 is a big 50%, which is hard to make up on frequency alone.

3D Particle Movement: Single Threaded

3DPM v1 in single thread mode loves frequency and IPC, hence why the overclocked i3 sits at the bottom of this small graph but in the middle of the older i7 parts in our benchmark database.

3D Particle Movement: MultiThreaded

In multithreaded mode, while the i3 and i5 parts can spawn similar amounts of threads, the 3.6 GHz overclock on the i3-6100TE isn't enough to bring the fight to the Core i5s.

WebXPRT

WebXPRT is a big fan of responsiveness, and having an overclocked system seems to help here. This means both the i3-6100TE OC and G3258 OC storm ahead.

Google Octane v2

Octane is more multithreaded than WebXPRT, relying more on synthetic testing. In our benchmark database the overclocked i3 pushes above some of the older Core i5s, but the Skylake i5-6600 is still on top.

TrueCrypt 7.1 Benchmark (AES Performance)

For AES encryption, the Pentium parts drop out due to the lack of AES-NI instructions, but it does become a case of threads and frequency here.

POV-Ray 3.7 Beta RC4

Overall conclusions on the pure CPU performance puts the stock Core i3 at the bottom end of our table in most tests, but overclocking it +35% turns it into a very average performer. In single threaded tests, depending on the memory footprint, it either handily beats or goes toe-to-toe with the Core i5s, usually sitting a pace behind. When the threads come out to play though, there is still that gap between the Core i3 and the Core i5 segments, by virtue of hyperthreads compared to real cores. This makes the issue more to do with cache per thread, and more trips out to higher latency memory to fetch data - typically highly threaded environments are processing a lot of data anyway, making it a compound effect.

GPU Tests on R9 290X

Alien Isolation on MSI R9 290X Gaming LE 4GB ($380)

Alien Isolation gets a good +12% boost in frame rates from that 35% overclock, pushing it above the Sandy Bridge i7 when the i7 runs at stock speed, but still behind an i5.

Total War: Attila on MSI R9 290X Gaming LE 4GB ($380)

Total War rises to an asymptotic peak of frame rates as cores and frequency increases, and while the overclocked i3 can't match the i5s they can get very close, as shown above.

Grand Theft Auto V on MSI R9 290X Gaming LE 4GB ($380)

Similarly with GTA, we get a good 20% rise in frame rates from the overclock but it still isn't enough for the last 1-8% or so to the old i7s or newer Core i5s.

GRID: Autosport on MSI R9 290X Gaming LE 4GB ($380)

GRID responds to a number of benefits, especially relating to DRAM speed, IPC and frequency. Using DDR4 helps the Core i3 here it seems, with that overclock giving a good 30% push in frame rates and putting the i3 and i5 within a margin of error.

Shadow of Mordor on MSI R9 290X Gaming LE 4GB ($380)

Shadow of Mordor on MSI R9 290X Gaming LE 4GB ($380)

Mordor is relatively flat on CPU performance.

With the AMD GPU tests, the overclocked Core i3 sits very much in mid table when looking at the big picture. The overclock doesn't really pull any of the games out of the gutter, but the use of DDR4 seems to help in games like GRID which love it when any component is upgraded. In games like Mordor, the GPU is the bottleneck so everyone seems to perform the same.

GPU Tests on GTX 980

Alien Isolation on ASUS GTX 980 Strix 4GB ($560)

Total War: Attila on ASUS GTX 980 Strix 4GB ($560)

Grand Theft Auto V on ASUS GTX 980 Strix 4GB ($560)

GRID: Autosport on ASUS GTX 980 Strix 4GB ($560)

Shadow of Mordor on ASUS GTX 980 Strix 4GB ($560)

Shadow of Mordor on ASUS GTX 980 Strix 4GB ($560)

In everything except Mordor, the overclocked i3 is anywhere from 10-15% behind the Core i5 in frame rates, but mid-table overall.

Conclusions

Everyone has been wondering for a while just how good an overclocked Core i3 part is. Well, here is our data, and the answer is perhaps somewhat surprising: a faster Core i3 moves itself into a mid-table position. In most cases it sits behind the Core i5 parts, unable to get over that hump of using two threads per core and having to share cache resources between hyperthreads. Having real cores in this instance makes a big difference. In a number of cases, the overclocked Core i3 sits above the older Core i7s, especially when improvements to the architecture have a profound impact on the performance of the processor.

But is an overclocked Core i3 going to feel like a part of higher value?

Base Clock Overclocking the Core i3-6100TE: Scaling So Why Do We Not See an Overclockable i3 CPU?
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  • Tunrip - Friday, March 18, 2016 - link

    I began reading Anandtech long before I actually had a PC, let alone began overclocking.
    What was that Celeron everyone raved about back in the day? Celeron 200A or something?

    I remember Anand used to make reference to it. These overclockable i3s remind me of that. A budget chip that could blow away the higher-performing (and costing) chips of the day when overclocked.

    Simpler times... :)
  • ses1984 - Friday, March 18, 2016 - link

    So Why Do We Not See an Overclockable i3 CPU? No competition from AMD.
  • Macpoedel - Saturday, March 19, 2016 - link

    Zo SuperMicro seeded you a slow Core i3 that you only got as vast as a regular Core i3. Basically what you showed Here is that a regular Core i3 6100 isn't !much slower than a regular Core i5 6500 but it is over $50 cheaper. Could it have hurt to mention that a Core IE 6100 runs at 3,7GHz?

    Couldn't you just get the Core i3 6100 yourself or is Anandtech not allowed to buy hardware? I get that you can't just go out and buy a Core i7 5960x or a GTX Titan X, but the company couldn't pay a $100 CPU? Funds can't be that tight. The only conclusion I can make is that you have some deal to only use seeded parts.

    Honestly what is the point of this 15 page article if you don't get the relevant parts? Are you yourself satisfied about these results? I think you've done a lot of work completely in vain. It's good that you try to be a little more than just another promotion channel for Intel/SuperMicro/etc but you should have been a little more critical to yourself when reviewing the results and considering the parts you're using.
  • Macpoedel - Saturday, March 19, 2016 - link

    Oops some words got autocorrected to Dutch in the first paragraph, but I guess it's clear what I'm saying, can't edit apparently.
  • stardude82 - Saturday, March 19, 2016 - link

    I don't see the value here when you are spending such a premium for a budget board. Just looking at Newegg, there is only a $10 savings going from an i3-6100 with this board to an i5-6500 with a H110 board.
  • lagittaja - Monday, March 21, 2016 - link

    What a pointless article. A 15 page long article which is completely pointless.
    Are you yourself satisfied with your article Ian?

    What did this tell us consumers?
    That if you take an unobtanium slow arse i3 and OC it, it performs about the same as the regular i3's which are widely available?
    Great scott! I did not expect that! Mind blown!

    Now run along to the store and grab a 6100/6300/6320 and do proper testing. We want to see that 4.5-5Ghz i3 go head to head against the OC'd i5..
  • LuxZg - Monday, March 21, 2016 - link

    I'd like to say that part about BIOS obviously isn't true, as people have tried and succeeded to revert back to older versions. Example:

    "Assuming you can get your hands on the OC BIOS it is possible to flash back to the previous version to regain the base clock overclocking ability. Again the microcode isn’t written to the CPU and is kept at the BIOS level so rolling back isn’t a problem.
    To confirm this, I updated my Z170 Extreme7+ motherboard to version 2.60 and sure enough the overclock no longer worked. After rolling back to version 2.16 the ability to overclock my non-K processors returned."

    source: http://www.hardwareunboxed.com/current-state-of-in...
  • StrangerGuy - Monday, March 21, 2016 - link

    Free lunch is: Abit BH6 + 300A, nForce 2 + unlocked Athlon XP, P35 + <$200 Conroe

    Not free lunch: Anything today thanks to incredibly restrictive CPU/chipsets lockdowns. With my 4790K already stock at 4.2GHz I'm not going to bother with OC. I'm not even going to mention the absurdity of pairing $100+ mobo just to hack-OC a $100 already at 3.7GHz CPU that would probably get locked down by Intel with a stealth microcode update.
  • Rob27shred - Tuesday, March 22, 2016 - link

    Great read! Definitely gives a very clear explanation of why Intel has denied us a K SKUed i3. I was very excited when I first heard of being able to OC non K SKUed Skylake chips. I have an extra GB Z170XP-SLI mobo & was planning on getting an i3 6XXX to have a little fun with. Now I have to look into it further as I don't want to buy an i3 & not be able to OC it.

    It's a shame that Intel pulled the rug out from under this so quickly but I from a business point of view you really can't blame them. I got hopes that other ways around Intel's micro code update will be seen though. I heard ASrock released a mobo aimed squarely at getting around the new restrictions.
  • yhselp - Tuesday, March 22, 2016 - link

    Sheeeit! That's the best damn AnandTech article in a long, long time. God bless you, Ian! Fantastic. Quintessential AnandTech! I'm thirsty for more.

    Maybe a super in-depth article on the effects of faster RAM on modern games? DDR4@3200 seems essential for a new build nowadays, and a DDR3@2133/2400 upgrade could potentially be a great upgrade for gamers stuck on 1333/1600. 16GB a must for Windows 10 gaming? Maybe an article on GPU overclocking, AMD GPUs driver overhead, achieving minimum frame-rates, etc.

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